|Publication number||US7099774 B2|
|Application number||US 10/347,364|
|Publication date||Aug 29, 2006|
|Filing date||Jan 21, 2003|
|Priority date||Jan 21, 2003|
|Also published as||CN1761979A, US6895332, US20040143390, US20040143391|
|Publication number||10347364, 347364, US 7099774 B2, US 7099774B2, US-B2-7099774, US7099774 B2, US7099774B2|
|Inventors||Byron King, Drew A. Yancey|
|Original Assignee||Byron King, Yancey Drew A|
|Export Citation||BiBTeX, EndNote, RefMan|
|Patent Citations (63), Non-Patent Citations (7), Referenced by (51), Classifications (23), Legal Events (6)|
|External Links: USPTO, USPTO Assignment, Espacenet|
1. Field of the Invention
The present invention relates to a method and apparatus for providing GPS based vehicle warning and location information to a vehicle operator.
2. Description of the Related Art
Emergency vehicles need to travel quickly and safely through traffic in order to get to a destination. Conventional emergency vehicles use either sirens or emergency lights, or both, in order to get to the destination quickly and safely. It is often the case that a driver who is on the same road or a nearby road as the emergency vehicle is not made aware of the emergency vehicle's presence. This may be the case when the driver has poor hearing, is listening to the car radio, is on his or her car phone, etc. When this occurs, it may result in a dangerous situation when the emergency vehicle approaches the unaware driver, which may result in the driver causing an accident with the emergency vehicle or with another nearby vehicle on the road.
Also, when an emergency vehicle comes to an intersection, it is important that all vehicles approaching the intersection in different directions are made aware of the approaching emergency vehicle. Again, some drivers may not be aware of the sirens and emergency lights of the emergency vehicle, and this may result in an accident occurring with the emergency vehicle and/or other vehicles at or near the intersection.
There have been some solutions proposed to address this problem. One solution has been to use optical detectors at an intersection that detect light signals emitted from an approaching emergency vehicle, whereby the optical detectors would manipulate the traffic signal for oncoming traffic. One drawback to this solution is the lack of warning when an emergency vehicle is coming from behind a motor vehicle.
Another solution has been to use a radar detector, which would detect a signal transmitted from an emergency vehicle. One drawing to this solution is that false triggering of the radar may result in a driver turning off the radar detector out of frustration. Furthermore, the location and distance of the emergency vehicle would not be made available to the driver with this solution.
Yet another solution is to have the emergency vehicle transmit a radio frequency (RF) signal at a predetermined frequency or frequency range. In this case, each motor vehicle would be equipped with an RF receiver which would receive the RF signal output by the emergency vehicle when the emergency vehicle is traveling to its destination. A further enhancement to this solution would be to utilize GPS in order to provide information as to the location of the emergency vehicle relative to the motor vehicle, whereby that information would be used by a microcontroller in order to determine the location of the emergency vehicle with respect to the driver's vehicle. The emergency vehicle's location would be displayed at the motor vehicle by way of one of four indicator lamps that are in the driver's view area (e.g., on the dashboard). Actuation of a first lamp would indicate that the emergency vehicle was somewhere ahead of the driver's vehicle, actuation of a second lamp would indicate that the emergency vehicle was somewhere to the left of the driver's vehicle, actuation of a third lamp would indicate that the emergency vehicle was somewhere to the right of the driver's vehicle, and actuation of a fourth lamp would indicate that the emergency vehicle was somewhere behind the driver's vehicle.
The above solution using both GPS signals and an RF transmitter and RF receiver is described in U.S. Pat. No. 6,339,382, issued to Donald Arbinger et al., which is incorporated in its entirety herein by reference. However, even with the Arbinger et al. solution, a driver is not provided precise information as to the exact location of the emergency vehicle, and so the driver may not choose the best streets to travel through in order to evade the emergency vehicle and to evade the snarled traffic that typically occurs on streets that the emergency vehicle travels on.
According to one aspect of the invention, there is provided an emergency vehicle alert system for providing information as to a location of an emergency vehicle to a motor vehicle. The system includes a first GPS receiving unit that is provided on said emergency vehicle and that is configured to receive at least three different GPS signals from at least different GPS satellites and to determine emergency vehicle location information of said emergency vehicle as a result thereof. The system also includes a radio-wave transmitter unit that is provided on said emergency vehicle and that is configured to transmit said emergency vehicle location information by way of an emergency vehicle location signal that includes said emergency vehicle location information. The system further includes a second GPS receiving unit that is provided on said motor vehicle and that is configured to receive at least three different GPS signals from at least three different GPS satellites and to determine vehicle location information of said motor vehicle as a result thereof. The system still further includes a radio-wave receiver unit that is provided on said motor vehicle and that is configured to receive the emergency location signal output by said radio-wave transmitter unit of said emergency vehicle. The system also includes a map display that is provided on said motor vehicle and that is configured to display, on a map that includes a plurality of street locations provided thereon, a current location of said motor vehicle as provided by the vehicle location information, and the map display configured to display, on the map, a current location of said emergency vehicle as provided by the emergency vehicle location information obtained from the emergency vehicle location signal received by said radio-wave receiver unit when said radio-wave receiver unit is in radio-wave communication range with respect to said radio-wave transmitter unit.
According to another aspect of the invention, there is provided an emergency vehicle that provides a warning indication to other vehicles. The emergency vehicle includes a GPS receiving unit that is configured to receive at least three different GPS signals from at least different GPS satellites and to determine emergency vehicle location information of said emergency vehicle as a result thereof. The emergency vehicle also includes a radio-wave transmitter unit that is configured to transmit said emergency vehicle location information by way of an emergency vehicle location signal that includes said emergency vehicle location information. The emergency vehicle further includes a radio-wave receiving unit that is configured to receive radio-wave signals from at least one other emergency vehicle that include information as to a current location of the at least one other emergency vehicle. The emergency vehicle still further includes a controller that is configured to determine a latitude and longitude position of said emergency vehicle based on the at least three different GPS signals, and to determine a latitude and longitude position of said at least one other emergency vehicle based on the received radio-wave signals. The emergency vehicle also includes a map display that is configured to display, on a map that includes a plurality of street locations provided thereon, a current location of said emergency vehicle and said at least one other emergency vehicle.
According to yet another aspect of the invention, there is provided an emergency vehicle alert system that is provided on a motor vehicle. The system includes a GPS receiving unit that is configured to receive at least three different GPS signals from at least different GPS satellites and to determine vehicle location information of said motor vehicle as a result thereof. The system also includes a radio-wave receiver unit that is configured to receive an emergency vehicle location signal output by an emergency vehicle. The system further includes a map display that is configured to display, on a map that includes a plurality of street locations provided thereon, a current location of said motor vehicle as provided by the vehicle location information as determined by said GPS receiving unit, and the map display configured to display, on the map, a current location of said emergency vehicle as obtained from the emergency vehicle location signal received by said radio-wave receiver unit when said radio-wave receiver unit is in radio-wave communication range with respect to said emergency vehicle.
According still yet another aspect of the invention, there is provided an emergency vehicle alert method that provides information as to a location of an emergency vehicle to a motor vehicle. the method includes receiving, by said emergency vehicle, at least three different GPS signals from at least different GPS satellites, and determining emergency vehicle location information of said emergency vehicle as a result thereof. The method also includes transmitting, by said emergency vehicle, said emergency vehicle location information by way of an emergency vehicle location signal. The method further includes receiving, by said motor vehicle, at least three different GPS signals from at least three different GPS satellites, and determining vehicle location information of said motor vehicle as a result thereof. The method still further includes receiving, when the motor vehicle is within a predetermined distance of said emergency vehicle, the emergency location signal output by said emergency vehicle. The method also includes displaying, on a map that includes a plurality of street locations provided thereon, a) a current location of said motor vehicle as provided by the vehicle location information, and b) a current location of said emergency vehicle as obtained from said emergency vehicle location signal.
The embodiments of the present invention will become more fully apparent from the following detailed description when read in conjunction with the accompanying drawings with like reference numerals indicating corresponding parts throughout, wherein:
Different embodiments of the invention will be explained below with reference to the accompanying drawings.
Referring now to
Referring now to
Referring back to
The controller 19 provides a switch function for the emergency vehicle 12, whereby when a sensor input signal 23 indicates that a warning signal is to be output, the controller 19 passes the location signal string 15 received from the GPS receiver 18 to the RF transmitter 20. One sensor input signal may be when a school bus activates its yellow or red lights, whereby only at those times will warning signals be output from the school bus. Another sensor input signal may be when a police car is traveling faster than a predetermined rate of speed (e.g., >65 miles per hour) to catch a suspected criminal. Another input to the controller 19 is an override signal 24, which is used so as to deactivate the emergency warning system even when the sensor input signal 23 is in an active state. The override signal 24 may be used, for example, when a police vehicle is on a car chase and does not want the current location of the police vehicle to be known to other nearby vehicles, since one of those nearby vehicles may very well be the vehicle of a suspected criminal that is being chased by the police vehicle.
Referring now to
The vehicle GPS antenna 28 receives at least three GPS signals 14 from the plurality of GPS satellites 100 that are within its line of sight. The at least three different GPS signals 14 are input to the vehicle GPS receiver 30, by way of the GPS antenna 28. The vehicle GPS receiver 30 outputs a motor vehicle location signal string 42, which is received by the controller 36. The controller 36 uses that information to determine the precise latitude and longitude of the motor vehicle unit 12, in a manner known to those skilled in the art.
In either the first or second embodiments, the map display 300, 400 is preferably a liquid crystal display (LCD), but other ways of displaying the location of the emergency vehicle unit 10 and the motor vehicle unit 12 on a road/street map may be utilized (e.g., cathode ray tube display), while remaining within the scope of the invention as described herein.
In a preferred implementation of the first and second embodiments, the emergency GPS antenna 16 is mounted permanently on all police, fire, ambulance, school buses and other types of emergency/public safety equipment. The elements shown in
In a third embodiment of the invention, the emergency location signal string 15 is output from one or more stationary locations that do not correspond to motor vehicles. For example, in the morning and in the afternoon when school children are walking to or from a school, a school crosswalk will have an RF transmitter that broadcasts its precise latitude and longitude information, so that motor vehicles can stay clear of this zone or approach the zone with caution while children are walking on the street to and from the school. A similar feature can be utilized at a railroad crossing, and at locations (e.g., fire stations) where emergency vehicles enter traffic from their station locations.
In a fourth embodiment, which is a variation of the first and second embodiments, the precise latitude and longitude of the emergency vehicle unit 12 will be constantly broadcast in a ½ mile radius, except in the case of police vehicles or other types of emergency vehicles that may have to drive at high rates of speed, in which they will utilize a speed sensor that will automatically increase the radio transmission signal strength cover a broader area (e.g., 1 mile radius), as needed, in order to give motorists in their vicinity sufficient advance notice of their approach.
Each motor vehicle unit 12 in any of the embodiments described above has a map display, which is preferably an LCD screen that is provided on a dashboard of the motor vehicle unit 12. The LCD screen is preferably capable of mapping the entire continental United States, for a vehicle to be sold and used in the United States. That way, when the vehicle is moved from one state to another, no changes need to be made in order to utilize the emergency vehicle warning and location system and method in the other state. Of course, for other regions, such as Europe, a corresponding map having all street locations in Europe is installed in the motor vehicle unit 12 for use in Europe. Preferably, the street/road maps are updated very two years, in order to reflect the current road and street layout for a particular area.
The present invention is also useful when two or more emergency vehicles, such as two police vehicles, are in the same area, such as when they are approaching the same intersection from different directions. In that case, using the system and method as described above, each police vehicle will be provided with current positioning of the other police vehicle, and so a potential collision can be greatly avoided. Police cars in this instance will include all of the features shown in
Furthermore, the emergency vehicle will utilize a notch filter having output signal versus frequency characteristics 500 as shown in
In a preferred implementation, the warning display 38 of the different embodiments described above will normally be blank, and will activate when emergency signals are detected. The system and method of the different embodiments also may include an audio output, which will provide synthesized speech that audibly notifies a driver where the emergency vehicle is currently located and its direction of movement. The synthesized speech is preferably output through the radio speakers of the motor vehicle unit 12, or by separate speakers in an alternative configuration. The GPS feature described above may incorporate navigational features as are currently available on many models of private and business vehicles, whereby those features would automatically cancel whenever emergency vehicles are detected.
The frequency band allocated for the emergency vehicle RF transmissions is preferably large enough in order to accommodate several different emergency vehicles operating close to each other. For example, if the allocated frequency band is from 3.100 to 3.200 MHz, then 100 kHz of frequency bandwidth is available. If each emergency vehicle is allocated a 5 kHz emergency signal bandwidth (including guard band), then up to 20 emergency vehicles can operate in close proximity to each other, without causing any problems with respect to detection at a motor vehicle unit 12 of the respective emergency signals output by these 20 emergency vehicles. As one example, the particular frequency range utilized by an emergency vehicle may be randomly selected within the operating frequency band, in order to lessen the chance that two emergency vehicles are operating in the exact same frequency range and are operating very close to each other. Also, by using the notch filter having the input/output characteristics 500 as shown in
Possible uses of the present invention are provided below. Emergency operators or patrolmen on duty are alerted to a location where they need assistance, or, in the case of patrolmen, they may have to stop a traffic violator. When their emergency vehicle warning systems are activated (e.g., by turning on the warning lights on a police vehicle), their location is broadcast within a prescribed area. School bus drivers activate their yellow and then red lights to take on children or let them off at school or at a bus stop near the children‘s’ homes. Fire houses, police stations, etc., where vehicles frequently have to enter traffic, will have a permanently mounted transmitter to alter motorists of traffic entering the roadway, so that the motorists can take appropriate action. The permanently mounted transmitter at a fire station may be activated by opening the garage doors of the fire station, or by some other device that allows for manual operation of the RF emergency transmitter.
One possible scenario in which the present invention is useful is described below. Fire station number 109 receives a call of a fire at 1010. Locust Street, whereby one fire truck and one emergency medical technician (EMT) team are needed. As the doors of the firehouse are opened, the permanently mounted transmitter in the street is activated. Motorists in the vicinity of the fire station have their LCD screen activated with a map showing their location and the location of the emergency transmitter. A synthesized voice will warn each motorist that “Emergency vehicle entering roadway, ¼ mile ahead”. A motorist will look at the map on his or her LCD screen, and will see that the location of the fire station is two blocks to his or her right. Based on this information, the motorist will avoid the road which the fire station is located on.
As the emergency vehicles enter traffic, they will begin broadcasting their locations. Motorists will be informed by their systems “Emergency traffic ahead, ⅛ mile moving towards you”. Again, this may be two blocks to a motorists' right, but the system will show both the motorist's progress and the path of the emergency vehicles. If the emergency vehicles turn onto the same street as a motorist, this will be shown on that motorist's LCD screen, and a synthesized voice will say “Emergency traffic ahead, on the right”. If a patrolman has a vehicle stopped and is issuing a ticket to the stopped vehicle, when a driver gets within range of the patrolman's vehicle, the driver will receive a message that states “Emergency vehicle ahead, stationary.” Again, by looking at the LCD screen and/or by listening to the audible warnings provided in the driver's compartment, the driver will know where to look for the patrolman in order to avoid an accident.
In case of school buses, when the driver starts the yellow light sequence, the transmitter begins broadcasting a signal with its location, direction and an additional radio code that identifies the transmitter as a school bus. A driver would hear “School bus ahead, ¼ mile”, and the driver's map display would show both the bus location and the driver's location, so that the driver can be aware of the situation.
In the case where transmitters are located at stationary locations, such as timed crossings, a driver would hear “School zone ahead, ¼ mile”, and the driver can take appropriate action to slow down.
While different embodiments have been described herein, modification of the described embodiments may become apparent- to those of ordinary skill in the art, following the teachings of the invention, without departing from the spirit and scope of the invention as set forth in the appended claims. For example, the method and system according to the invention is applicable to a completely digital communication system, whereby no analog to digital conversion of information received over-the-air would be required in that instance. Also, other frequency bands for transmitting information over-the-air in a limited range, beyond the one described above that uses the radio frequency range, may be utilized (e.g., infrared), while remaining within the scope of the invention.
|Cited Patent||Filing date||Publication date||Applicant||Title|
|US2028497||Jun 23, 1931||Jan 21, 1936||Clausing Leroy M E||Radio signaling system|
|US3235025||Apr 20, 1964||Feb 15, 1966||Gen Motors Corp||Collision prevention system|
|US3772692||Jan 5, 1972||Nov 13, 1973||Sperry Rand Corp||Marine radar-beacon transponder navigation and collision avoidance system|
|US3854119||Aug 11, 1972||Dec 10, 1974||Solitron Devices||Vehicle proximity alerting means|
|US3876940||Dec 3, 1973||Apr 8, 1975||Turner John D||Driver's safety warning system|
|US3997868||Jan 13, 1975||Dec 14, 1976||Ribnick Gerson D||Emergency vehicle warning system|
|US4238778||Sep 12, 1977||Dec 9, 1980||Kinya Ohsumi||System for warning the approach of an emergency vehicle|
|US4403208||Apr 13, 1979||Sep 6, 1983||Hodgson R W||Warning-signal-producing system for a motor vehicle responsive to a vehicle-presence-indicating radio wave signal emitted by another vehicle and indicative of its presence|
|US4623966||Feb 15, 1984||Nov 18, 1986||Sperry Limited||Collision avoidance apparatus|
|US5068654||Jul 3, 1989||Nov 26, 1991||Hazard Detection Systems||Collision avoidance system|
|US5111210||Jun 22, 1990||May 5, 1992||Survival Safety Engineering, Inc.||Collision avoidance radar detector system|
|US5153836||Aug 22, 1990||Oct 6, 1992||Edward J. Fraughton||Universal dynamic navigation, surveillance, emergency location, and collision avoidance system and method|
|US5249157||Aug 22, 1990||Sep 28, 1993||Kollmorgen Corporation||Collision avoidance system|
|US5303259||Nov 7, 1991||Apr 12, 1994||Loveall Peter S||Frequency-hopped electronic signal transmitter|
|US5307060||Mar 17, 1992||Apr 26, 1994||Sy Prevulsky||Emergency vehicle alert system|
|US5307074||Apr 19, 1993||Apr 26, 1994||Lmt Radio Professionnelle||Collision avoidance system for sea navigation|
|US5314037||Jan 22, 1993||May 24, 1994||Shaw David C H||Automobile collision avoidance system|
|US5317321||Jun 25, 1993||May 31, 1994||The United States Of America As Represented By The Secretary Of The Army||Situation awareness display device|
|US5430656||Sep 8, 1993||Jul 4, 1995||Dekel; Itzhak||Mobile communications system|
|US5450329||Dec 22, 1993||Sep 12, 1995||Tanner; Jesse H.||Vehicle location method and system|
|US5471214||Nov 25, 1992||Nov 28, 1995||State Of Israel Ministry Of Defense, Armament Developmental Authority, Rafael||Collision avoidance and warning system|
|US5495243||Jul 27, 1994||Feb 27, 1996||Mckenna; Lou||Emergency vehicle alarm system for vehicles|
|US5506590||Jun 30, 1993||Apr 9, 1996||Minter; Jerry B.||Pilot warning system|
|US5515026||Jan 28, 1994||May 7, 1996||Ewert; Roger D.||Total alert driver safety system|
|US5554982||Aug 1, 1994||Sep 10, 1996||Hughes Aircraft Co.||Wireless train proximity alert system|
|US5572201||Aug 5, 1994||Nov 5, 1996||Federal Signal Corporation||Alerting device and system for abnormal situations|
|US5620155||Mar 23, 1995||Apr 15, 1997||Michalek; Jan K.||Railway train signalling system for remotely operating warning devices at crossings and for receiving warning device operational information|
|US5635923||Oct 11, 1995||Jun 3, 1997||Trw Inc.||Receiver for use in a remote keyless entry system and for receiving public broadcasts|
|US5636122 *||May 17, 1995||Jun 3, 1997||Mobile Information Systems, Inc.||Method and apparatus for tracking vehicle location and computer aided dispatch|
|US5636123||Jul 15, 1994||Jun 3, 1997||Rich; Richard S.||Traffic alert and collision avoidance coding system|
|US5736962||Feb 28, 1996||Apr 7, 1998||Tendler Cellular, Inc.||Time since last fix annunciation system for GPS-based wireless rescue system|
|US5757284||Jun 6, 1995||May 26, 1998||Trizzino; Christopher||Emergency vehicle warning system and method|
|US5801646||Aug 22, 1997||Sep 1, 1998||Pena; Martin R.||Traffic alert system and method for its use|
|US5808560||Jun 17, 1996||Sep 15, 1998||Emergency Alert Technologies Inc.||Emergency vehicle alert apparatus|
|US5872526||May 23, 1996||Feb 16, 1999||Sun Microsystems, Inc.||GPS collision avoidance system|
|US5890682||Jul 14, 1997||Apr 6, 1999||Alternative Safety Technologies||Railway crossing collision avoidance system|
|US5914675||May 23, 1996||Jun 22, 1999||Sun Microsystems, Inc.||Emergency locator device transmitting location data by wireless telephone communications|
|US5983161||Sep 24, 1996||Nov 9, 1999||Lemelson; Jerome H.||GPS vehicle collision avoidance warning and control system and method|
|US6002345||Sep 23, 1997||Dec 14, 1999||Mazda Motor Corporation||Assurance of intercommunication and position recognition between mobile stations with navigation apparatuses|
|US6038502||Feb 19, 1997||Mar 14, 2000||Komatsu Ltd.||Apparatus and method for fleet control when unmanned and manned vehicles travel together|
|US6049755||Jul 13, 1998||Apr 11, 2000||Magellan Dis, Inc.||Navigation system vehicle location display|
|US6087961||Oct 22, 1999||Jul 11, 2000||Daimlerchrysler Corporation||Directional warning system for detecting emergency vehicles|
|US6160493||Oct 29, 1997||Dec 12, 2000||Estech Corporation||Radio warning system for hazard avoidance|
|US6326903||Jan 26, 2000||Dec 4, 2001||Dave Gross||Emergency vehicle traffic signal pre-emption and collision avoidance system|
|US6339382 *||Dec 7, 2000||Jan 15, 2002||Donald A. Arbinger||Emergency vehicle alert system|
|US6384776||Apr 30, 1999||May 7, 2002||B. Todd Martin||EM signal detection and position broadcasting system and method|
|US6404351||Oct 20, 2000||Jun 11, 2002||Dennis Beinke||Emergency vehicle warning system|
|US6405125||Sep 26, 2000||Jun 11, 2002||Mourad Ben Ayed||Parked vehicle locator|
|US6417782||Jun 22, 2000||Jul 9, 2002||Larry Dean Darnall||Driver's emergency alert system|
|US6529831 *||Jun 21, 2000||Mar 4, 2003||International Business Machines Corporation||Emergency vehicle locator and proximity warning system|
|US6549916||May 15, 2000||Apr 15, 2003||Oracle Corporation||Event notification system tied to a file system|
|US6574547||Sep 27, 2001||Jun 3, 2003||International Business Machines Corporation||Use of vehicle permissions to control individual operator parameters in a hierarchical traffic control system|
|US6580997||Sep 27, 2001||Jun 17, 2003||International Business Machines Corporation||Hierarchical traffic control system which includes vehicle roles and permissions|
|US20010038344||May 2, 2001||Nov 8, 2001||Garcia Anthony M.||Alarm system responding to presence of an emergency vehicle|
|US20020198660||Jun 26, 2001||Dec 26, 2002||Medius, Inc.||Method and apparatus for transferring information between vehicles|
|US20030090392||Dec 20, 2000||May 15, 2003||Robert Schuessler||Device for warning the driver of a motor vehicle of dangers by radio|
|US20030141990||Jan 30, 2002||Jul 31, 2003||Coon Bradley S.||Method and system for communicating alert information to a vehicle|
|US20030169181||Mar 5, 2003||Sep 11, 2003||Taylor Lance G.||Intelligent selectively-targeted communications systems and methods|
|US20030169185||Mar 5, 2003||Sep 11, 2003||Taylor Lance G.||Intelligent selectively-targeted communications systems and methods for aircraft|
|DE10007573C1||Feb 18, 2000||Sep 27, 2001||Daimler Chrysler Ag||Vorrichtung zur funkbasierten Gefahrenwarnung des Fahrers eines Kraftfahrzeugs|
|EP1223567A1||Jan 11, 2001||Jul 17, 2002||Siemens Aktiengesellschaft||A method for inter-vehicle communication of individualized vehicle data|
|WO2000011831A2||Aug 17, 1999||Mar 2, 2000||Telefonaktiebolaget Lm Ericsson (Publ)||Methods and apparatus for providing robust synchronization of radio transceivers|
|WO2002103653A1||Jun 18, 2002||Dec 27, 2002||Emergency Warning Systems Pty Ltd||Apparatus for broadcasting a warning signal|
|1||Article-"Intelligent Transportation Systems in Work Zones-A Cross-Cutting Study", Published Nov. 2002, pp. 1-35.|
|2||Article-"Invehicle Safety Advisory and Warning System (IVSAWS)", vol. I, Executive Summary, U.S. Department of Transportation, Publication No. FHWA-RD-94-061, Mar. 1996, pp. 1-24.|
|3||Article-"Invehicle Safety Advisory and Warning System (IVSAWS)," vol. II, Final Report, U.S. Department of Transportation, Publication No. FHWA-RD-94-190, Mar. 1996, pp. 1-257.|
|4||Web Site for gizmo.com.au, "Black Spot Road Angel-accident prevention technology," 2 pp. (2003), available at http://gizmo.com.au/public/News/news.asp?articleid=1970.|
|5||Web Site for Magellan, "Driving Adventures," 2 pp. (Thales Navigation, Inc. 2003), available at http://www.magellangps.com/en/gpsAdventures/driving/road.asp.|
|6||Web Site for Seattle Post-Intelligencer, "Venture Capital: Dashboard device helps navigate road jams," Seattle Post-Intelligencer, 4 pp. (Jun. 13, 2003).|
|7||Web Site for Tiger GPS & Marine Electronics, "Magellan 750NAV Plus Vehicle Navigation GPS System," 3 pp. (TigerGPS.com, Ltd. 2003), available at http://www.tigergps.com/mag750navveh.html.|
|Citing Patent||Filing date||Publication date||Applicant||Title|
|US7382742 *||Oct 21, 2003||Jun 3, 2008||Allied Telesis K.K.||Communication system, information collecting system and method therefor|
|US7469277 *||Jun 16, 2004||Dec 23, 2008||Canon Kabushiki Kaisha||Information output apparatus, information output method, information output program, information transmitting apparatus, information transmitting method, information transmitting program, and information output system|
|US7859392||May 22, 2007||Dec 28, 2010||Iwi, Inc.||System and method for monitoring and updating speed-by-street data|
|US7876205||Oct 2, 2007||Jan 25, 2011||Inthinc Technology Solutions, Inc.||System and method for detecting use of a wireless device in a moving vehicle|
|US7899610||Sep 25, 2007||Mar 1, 2011||Inthinc Technology Solutions, Inc.||System and method for reconfiguring an electronic control unit of a motor vehicle to optimize fuel economy|
|US7999670||Jul 2, 2007||Aug 16, 2011||Inthinc Technology Solutions, Inc.||System and method for defining areas of interest and modifying asset monitoring in relation thereto|
|US8099113||Jan 8, 2008||Jan 17, 2012||Global Alert Network, Inc.||Passive traffic alert and communication system|
|US8126479||Oct 14, 2008||Feb 28, 2012||Global Alert Network, Inc.||Mobile alerting network|
|US8126480||Sep 24, 2009||Feb 28, 2012||Global Alert Network, Inc.||Mobile alerting network|
|US8188887||Feb 13, 2009||May 29, 2012||Inthinc Technology Solutions, Inc.||System and method for alerting drivers to road conditions|
|US8301112||Mar 11, 2009||Oct 30, 2012||Global Alert Network, Inc.||Mobile alerting network|
|US8306503 *||Jan 9, 2009||Nov 6, 2012||Global Alert Network, Inc.||Mobile alerting network|
|US8306555||Dec 12, 2011||Nov 6, 2012||Global Alert Network, Inc.||Passive traffic alert and communication system|
|US8423048||Jan 27, 2012||Apr 16, 2013||Global Alert Network, Inc.||Mobile alerting network|
|US8577703||Jul 17, 2007||Nov 5, 2013||Inthinc Technology Solutions, Inc.||System and method for categorizing driving behavior using driver mentoring and/or monitoring equipment to determine an underwriting risk|
|US8594707||Oct 26, 2012||Nov 26, 2013||Global Alert Network, Inc.||Mobile alerting network|
|US8612131||Apr 5, 2011||Dec 17, 2013||B&C Electronic Engineering, Inc.||Emergency and traffic alert system|
|US8630768||May 22, 2007||Jan 14, 2014||Inthinc Technology Solutions, Inc.||System and method for monitoring vehicle parameters and driver behavior|
|US8666590||Jun 22, 2007||Mar 4, 2014||Inthinc Technology Solutions, Inc.||System and method for naming, filtering, and recall of remotely monitored event data|
|US8688180||Aug 6, 2008||Apr 1, 2014||Inthinc Technology Solutions, Inc.||System and method for detecting use of a wireless device while driving|
|US8818618||Jul 17, 2007||Aug 26, 2014||Inthinc Technology Solutions, Inc.||System and method for providing a user interface for vehicle monitoring system users and insurers|
|US8825277||Jun 5, 2007||Sep 2, 2014||Inthinc Technology Solutions, Inc.||System and method for the collection, correlation and use of vehicle collision data|
|US8825368||May 21, 2012||Sep 2, 2014||International Business Machines Corporation||Physical object search|
|US8842021 *||Jun 7, 2011||Sep 23, 2014||International Business Machines Corporation||Methods and systems for early warning detection of emergency vehicles|
|US8890673||Jan 24, 2011||Nov 18, 2014||Inthinc Technology Solutions, Inc.||System and method for detecting use of a wireless device in a moving vehicle|
|US8890717||Dec 22, 2010||Nov 18, 2014||Inthinc Technology Solutions, Inc.||System and method for monitoring and updating speed-by-street data|
|US8892341||Feb 13, 2009||Nov 18, 2014||Inthinc Technology Solutions, Inc.||Driver mentoring to improve vehicle operation|
|US8963702||Feb 13, 2009||Feb 24, 2015||Inthinc Technology Solutions, Inc.||System and method for viewing and correcting data in a street mapping database|
|US9067565||May 30, 2007||Jun 30, 2015||Inthinc Technology Solutions, Inc.||System and method for evaluating driver behavior|
|US9117246||Feb 12, 2009||Aug 25, 2015||Inthinc Technology Solutions, Inc.||System and method for providing a user interface for vehicle mentoring system users and insurers|
|US9129460||Jun 25, 2007||Sep 8, 2015||Inthinc Technology Solutions, Inc.||System and method for monitoring and improving driver behavior|
|US9172477||Feb 14, 2014||Oct 27, 2015||Inthinc Technology Solutions, Inc.||Wireless device detection using multiple antennas separated by an RF shield|
|US9188447||Jun 17, 2014||Nov 17, 2015||International Business Machines Corporation||Physical object search|
|US9316718||May 6, 2010||Apr 19, 2016||Continental Teves Ag & Co. Ohg||C2X communication with reduced data volume|
|US9380741||Dec 28, 2011||Jul 5, 2016||Husqvarna Ab||Yard maintenance vehicle route and orientation mapping system|
|US20050009575 *||Oct 21, 2003||Jan 13, 2005||Allied Telesis K.K.||Communication system, information collecting system and method therefor|
|US20050010363 *||Jun 16, 2004||Jan 13, 2005||Takashi Hirata||Information output apparatus, information output method, information output program, information transmitting apparatus, information transmitting method, information transmitting program, and information output system|
|US20050278078 *||Jun 10, 2004||Dec 15, 2005||Sterling Jerome J||Vehicle pursuit caution light|
|US20060184319 *||Feb 17, 2005||Aug 17, 2006||Seick Ryan E||Navigational aid for emergency vehicles|
|US20080272896 *||May 1, 2007||Nov 6, 2008||Maria Adamczyk||Object tracking method and apparatus|
|US20090176511 *||Oct 14, 2008||Jul 9, 2009||Mobiletraffic Networks, Inc.||Mobile alerting network|
|US20090176512 *||Jan 8, 2008||Jul 9, 2009||James Morrison||Passive traffic alert and communication system|
|US20090209233 *||Jan 9, 2009||Aug 20, 2009||Mobile Traffic Network, Inc.||Mobile alerting network|
|US20090233575 *||Mar 11, 2009||Sep 17, 2009||Mobile Traffic Network, Inc.||Mobile alerting network|
|US20100057358 *||Sep 16, 2008||Mar 4, 2010||TeleType Co., Inc.||Portable gps map device for commercial vehicle industry|
|US20100069093 *||Sep 24, 2009||Mar 18, 2010||Mobile Traffic Network, Inc.||Mobile alerting network|
|US20100250111 *||Feb 16, 2010||Sep 30, 2010||B&C Electronic Engineering, Inc.||Emergency and traffic alert system|
|US20120310517 *||Jan 10, 2011||Dec 6, 2012||Van Den Oever Jacob||Method for warning a user of a road vehicle about an approaching vehicle|
|US20120313792 *||Jun 7, 2011||Dec 13, 2012||International Business Machines Corporation||Methods and systems for early warning detection of emergency vehicles|
|US20150312837 *||Apr 23, 2014||Oct 29, 2015||At&T Intellectual Property I, L.P.||Facilitating mesh networks of connected movable objects|
|WO2013100925A1 *||Dec 28, 2011||Jul 4, 2013||Husqvarna Consumer Outdoor Products N.A., Inc.||Yard maintenance vehicle route and orientation mapping system|
|U.S. Classification||701/454, 340/904, 701/301, 340/990, 340/902, 382/113, 340/995.1, 342/457, 340/426.16, 455/132, 382/103, 340/426.19, 345/636, 701/515, 701/468|
|International Classification||G01C21/26, G06G7/76, G08G1/0965, G01S19/48|
|Cooperative Classification||G01C21/26, G08G1/0965|
|European Classification||G08G1/0965, G01C21/26|
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